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Updated: Mar 13, 2026

High-Speed Magnetic Tweezers for Nanomechanical Measurements on Force-Sensitive Elements
Published on: May 12, 2023
Development of electromagnetic tweezers for single-molecule energetics of kinesin
Haruyuki Fukuzawa1,2, Yuga Ihara2,3, Masato Sawa2,3
1Department of Biological Sciences, Graduate School of Science, The University of Tokyo, Tokyo 113-0033, Japan.
Abstract:
Optical tweezers have enabled single-molecule measurements of kinesin mechanics and energetics but face challenges for in vivo applications due to photothermal effects and refractive-index-dependent force calibration. Here, we developed electromagnetic tweezers featuring horizontal magnetic field geometry that enables force application along the microtubule axis for translational motor measurements. We validated the platform by reproducing established kinesin mechanics: stall force of ~6 pN and, using the Harada-Sasa equality to quantify nonequilibrium dissipation, an estimated energy conversion efficiency of ~20%, both consistent with optical tweezers results. We further demonstrated that FDT violations increase with ATP concentration following Michaelis-Menten kinetics, consistent with kinesin's enzymatic turnover. These results establish electromagnetic tweezers as a complementary tool offering advantages in high-throughput measurements and environment-independent force calibration, providing a foundation for future applications where these capabilities are essential.
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